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Biomedical subjects

F D Lowy

Publications and source records attributed to F D Lowy.

16 recordsLinked to original sources

Persistent fever in association with infective endocarditis.

Fever persisting despite adequate antimicrobial therapy for endocarditis can be an ominous sign. To evaluate the significance of persistent fever in this situation, we reviewed the records of patients at three hospital affiliates of Albert Einstein College of Medicine. Twenty-six patients with 27 episodes of endocarditis and fever lasting for > or = 2 weeks despite appropriate antimicrobial therapy were identified and compared with a matched cohort of 26 patients with endocarditis but without prolonged fever. The median duration of fever in the former group was 35 days. Cardiac infection caused fever in 13 of these patients, seven of whom had myocardial abscesses. Additional causes of infection included drug treatment, nosocomial transmission of pathogens, and pulmonary emboli. Sixteen patients required cardiac surgery (seven on an emergent basis), whereas only two controls underwent such a procedure (P < .001). Twenty-two patients with persistent fever and five controls developed nosocomial complications (P < .001). Six patients with fever died, five from endocarditis-related complications. Thus persistent fever often indicates complicated endocarditis. We present an approach for the evaluation of the patients affected by this condition.

Adolescent

Staphylococcus aureus proteins that bind to human endothelial cells.

The adherence of Staphylococcus aureus to human endothelial cells is saturable in both dose- and time-dependent assays. Staphylococcal surface components which bound to endothelial cells in vitro were identified by using biotin-labeled, solubilized staphylococcal proteins. Four trypsin-sensitive components with molecular sizes of 30, 55 to 57, 70, and 85 kDa were recognized. These proteins did not label with the glycan detection system. When staphylococci were harvested during the exponential phase of growth, staphylococcal adherence to endothelial cells was significantly increased and increased expression of the S. aureus binding proteins was observed. Preincubation of endothelial cells with protein A did not reduce S. aureus adherence in an in vitro infection assay. Four S. aureus surface components whose expression is growth phase dependent adhere to human endothelial cells in vitro.

Bacterial Adhesion

Staphylococcus aureus infection of human endothelial cells potentiates Fc receptor expression.

Vasculitis, a recognized complication of staphylococcal-endovascular infections, may result in part, from the expression of FcR by Staphylococcus aureus-infected endothelial cells. FcR were measured using [51]Cr labeled SRBC preincubated with rabbit anti-SRBC IgG. FcR were not detected on uninfected endothelial cells, but were demonstrated on S. aureus infected cells using IgG, but not IgM labeled SRBC. FcR expression was dependent on the initial bacterial density (greater than or equal to 8 x 10(7) cfu/ml) and on phagocytosis of the staphylococci, but not on new protein synthesis. IgG labeled SRBC binding was blocked by aggregated IgG but not IgM. SRBC coated with the F(ab')2 portion of IgG did not bind, thus confirming that FcR were specifically involved in this interaction. FcR are expressed after S. aureus invasion of human endothelial cells and may contribute to the vasculitis which often accompanies S. aureus-endovascular infections.

Cells, Cultured

A human endothelial cell membrane protein that binds Staphylococcus aureus in vitro.

We have investigated S. aureus adherence to human endothelial cells utilizing an in vitro model. Staphylococcus binding to confluent endothelial cell monolayers was saturable in both dose and time response studies suggesting that the binding interaction was specific. We have developed a technique, based on the pH dependent affinity of iminobiotin for streptavidin, for the isolation of an endothelial cell membrane component that binds S. aureus, in vitro. A 50-kD membrane component was isolated and purified using this approach. This component was trypsin sensitive, periodate insensitive, and did not label with [3H]glucosamine. [35S]Methionine and [125I]iodine labeling confirmed that the protein was synthesized by and expressed on the endothelial cell surface. Functional binding studies demonstrated that staphylococci, but not endothelial cells, bound to the protein when immobilized on microtiter wells. Preincubation of staphylococci with the purified protein significantly (P less than 0.001) reduced staphylococcal binding to cultured endothelial cells. The capacity of S. aureus to colonize and invade endovascular surfaces may in part be a consequence of staphylococcal interaction with this endothelial cell membrane protein.

Bacterial Adhesion

Staphylococcus aureus--human endothelial cell interactions.

Staphylococcus aureus is an invasive pathogen capable of causing life-threatening disease. A major component of this pathogen's virulence is its ability to invade normal endovascular tissue. We examined the interaction of S. aureus with cultured human endothelial cells and with human and rabbit endovascular tissue. Our ultrastructural study demonstrated a sequence of steps which occurred with staphylococcal invasion of human endothelial cells; adhesion, endocytosis, and intracellular replication. Ultimately, this resulted in cell disruption and death. Cytochemical staining of lysosomes demonstrated lysosomal fusion with both viable and killed intracellular bacteria without evidence of staphylococcal degradation. Quantitative studies using an in vitro infection assay demonstrated comparable rates of adhesion by viable and ultraviolet-killed bacteria, phagocytosis at a slower rate, and intracellular replication. The present study demonstrates an active role for the endothelial cell in the development and spread of endovascular staphylococcal infections. It also supports the use of this in vitro tissue culture system as a model for the study of bacterial invasion of the endothelium.

Animals

Acidic fibroblast growth factor modulates Staphylococcus aureus adherence to human endothelial cells.

Alteration of human endothelial cells may increase their susceptibility to staphylococcal invasion and thus may contribute to the development of intravascular staphylococcal disease. Acidic fibroblast growth factor, a potent regulator of endothelial cell function, had a significant effect on Staphylococcus aureus infection of cultured human endothelial cells. Three of four S. aureus strains had diminished adherence to endothelial cells when the latter were grown in the presence of acidic fibroblast growth factor (P less than 0.05). The diminished adherence was time dependent, maximal at 72 h, and independent of the initial bacterial inoculum. A twofold enhancement of S. aureus adherence was observed when endothelial cells were pretreated with heparitinase. Adherence was unaffected by endothelial cell activation by interleukin-1 or endotoxin. Thus, acidic fibroblast growth factor exerted a protective effect, deterring S. aureus adherence to cultured endothelial cells. Endothelial cell heparan sulfate was also directly involved in the adherence process. Subtle modulations of endothelial cells can significantly affect the ability of S. aureus to adhere to and then infect these cells. Similar alterations may contribute to the ability of S. aureus to infect endovascular tissue in vivo.

Bacterial Adhesion

The incidence of nosocomial pneumonia following urgent endotracheal intubation.

The risk of nosocomial pneumonia following emergency or urgent endotracheal intubation was studied prospectively. Pneumonia developed in 35 of 78 (45%) patients within three days of intubation. No differences in age, sex, underlying illness, respiratory infection, or antibiotic use were found between those with or without pneumonia. There were also no differences in the frequency of complications occurring during intubation. Patients developing pneumonia tended to have the same organisms isolated from the sputum at the time of intubation and at the time of diagnosis of pneumonia (9 of 20 were identical, 5 differed by a single organism). Sputum cultures taken at the time of intubation were helpful in predicting the subsequent pathogens in patients who developed pneumonia. There were no differences in mortality between patients with (29%) and without (28%) pneumonia. Emergency endotracheal intubation appears to contribute to the overall incidence of nosocomial pneumonia.

Aged

Tuberculous meningitis in an urban medical center.

Forty-five cases of tuberculous meningitis at a large urban medical center were reviewed. Reasons for the continued incidence, prognostic factors, and current therapy of this life-threatening form of tuberculosis were examined. Thirty-nine of 45 patients were black, Hispanic, and/or 65 years of age or older (87%). Underlying conditions included alcohol abuse in 12, intravenous drug abuse in 7, recent steroid therapy in 4, head trauma in 4, recent pregnancy in 4, and the acquired immunodeficiency syndrome in 1. Thirty-four patients (76%) presented with altered mental status and/or focal neurologic findings. Significant mortality (31%) occurred despite the administration of antituberculous therapy to all but 1 patient. Six of 14 deaths (43%) occurred in the first week of hospitalization. One-third of survivors had neurologic sequelae at the time of follow-up. Neurologic deficits on admission, advanced age, and alcohol abuse were frequent among those who succumbed. Early recognition and treatment in hospital failed to improve outcome in advanced cases. From these findings we conclude that both aggressive treatment of primary tuberculous infections as well as prevention of secondary cases are necessary to effect any further reduction in the incidence, morbidity, and mortality of tuberculous meningitis.

Adolescent

Treatment of experimental methicillin-resistant Staphylococcus epidermidis endophthalmitis with intravitreal vancomycin.

Endophthalmitis remains a dreaded complication of intraocular surgery and penetrating eye trauma. Subconjunctival, topical, and systemic antibiotics have been largely ineffective in the treatment of endophthalmitis, whereas intravitreal antibiotics have proved efficacious. Methicillin-resistant Staphylococcus epidermidis has become an important pathogen in many infections, including endophthalmitis. Toxicity, clearance, and efficacy of intravitreal vancomycin were evaluated in the treatment of experimental methicillin-resistant S. epidermidis endophthalmitis. No evidence of retinal toxicity was found and therapeutic levels were demonstrated six days after injection. The treated rabbit eyes showed a marked beneficial effect when compared to the untreated eyes. If experience confirms the safety of intravitreal vancomycin in human eyes, vancomycin should be considered the drug of choice for methicillin-resistant S. epidermidis endophthalmitis.

Animals

Penicillin-induced effects on streptomycin uptake and early bactericidal activity differ in viridans group and enterococcal streptococci.

In vitro studies with penicillin and [3H]streptomycin in four strains of streptococci (S. faecalis, S. sanguis, and S. mitis) were performed by simultaneously measuring the rates of bacterial killing and uptake of streptomycin. In S. faecalis, penicillin stimulated streptomycin uptake, as has been shown by Moellering and Weinberg (R. C. Moellering, Jr., and A. N. Weinberg, J. Clin. Invest. 50:2580-2584, 1971). Moreover, the antibiotic combination was associated with an enhanced bactericidal rate which temporally correlated with beta-lactam-induced aminoglycoside uptake. In contrast, in viridans group streptococci (S. sanguis and S. mitis) penicillin had no effect on streptomycin uptake and a minimal effect on bactericidal rate when compared with either drug alone. These data suggested that the stimulation of streptomycin uptake in streptococci by penicillin is strain or species specific and that important differences exist between enterococci and viridans group streptococci regarding the mechanisms of beta-lactam-aminoglycoside potentiation.

Aminoglycosides

Bacterial adherence to human endothelial cells in vitro.

Differences in the ability of bacteria to adhere to normal valvular endothelium may account for the predominance of particular species as pathogens in acute endocarditis. An in vitro adherence assay was developed to simulate the host surface encountered in acute bacterial endocarditis by using confluent monolayers of human endothelial cells. Adherence of 32 gram-positive and -negative blood culture isolates to this surface was compared. All five Staphylococcus aureus strains tested were highly adherent to endothelial cells, as was one gram-negative strain (Serratia marcescens). The remaining gram-positive and -negative isolates, including four viridans streptococci, were relatively nonadherent. Transmission electron microscopy demonstrated attachment of Staphylococcus aureus and invagination of the underlying endothelial cell membrane at 1 h followed by engulfment of large numbers of bacteria after 3 h. The intracellular bacteria appeared to be contained within vacuoles. Preferential attachment of some strains of bacteria, in particular Staphylococcus aureus, to human endothelial cells occurred in vitro, suggesting that adherence is an important determinant of bacterial pathogenicity in acute endocarditis. Active uptake of bacteria by endothelial cells may help account for the virulence of Staphylococcus aureus in endovascular infections and for the ability of this organism to establish multiple metastatic foci of infection.

Adhesiveness

Antibiotic activity in vitro against methicillin-resistant Staphylococcus epidermidis and therapy of an experimental infection.

Staphylococcus epidermidis is a major pathogen in early prosthetic valve endocarditis and cerebrospinal fluid shunt infections. Approximately 10 to 15% of hospital isolates are methicillin resistant. Ten clinically significant isolates of the latter were collected for antibiotic studies in vitro and in an experimental infection in animals. Time-kill studies of five strains showed gentamicin to be the single most effective antibiotic; however, dwarf colony variants emerged as survivors with two of these strains when challenged with gentamicin alone. The addition of a second antibiotic to gentamicin did not significantly improve the bactericidal rate but prevented the emergence of variant strains. A blood culture isolate of methicillin-resistant S. epidermidis combined with 5% hog gastric mucin was used to establish an experimental intraperitoneal infection in mice. Neither methicillin nor nafcillin treatment reduced mortality below that of untreated animals. Cephalothin treatment delayed early mortality but did not diminish overall mortality. Gentamicin was the most effective single antibiotic, and gentamicin in combination with vancomycin was the most effective regimen overall. The combination of rifampin plus vancomycin was as effective as gentamicin alone. The combinations of cephalothin or nafcillin with gentamicin and cephalothin with vancomycin demonstrated antagonism. The antagonism was not due to multiple injections or drug-drug inactivation.

Animals